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A Control Strategy for the Grid-Side Converter of the Directly-Driven Wind Turbine with PM Synchronous Generator under Unbalanced Grid Voltage

机译:不平衡电网电压下PM同步发电机直流风力涡轮机电网侧转换器的控制策略

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A mathematical model of the full power grid-connecting converter at grid side for permanent magnet synchronous generator (PMSG) under unbalanced grid conditions is built, double-frequency oscillation mechanism on DC voltage is analyzed, and the influence of active power ripple of grid-connecting impedance on dual current control is discussed. To suppress the double-frequency oscillation on DC voltage, and take the grid-connected impedance on active power into account, a dual current control strategy, which based on respectively orientating positive- and negative-sequence voltages, is proposed, and introduced the correction value of active power ripple of grid-connecting impedance to correct reference current of proposed control strategy. Simulation results show that the proposed control strategy can effectively control positive and negative-sequence currents, eliminate the DC voltage double-frequency oscillation, and improve harmonic characteristic of grid-connected current.
机译:在不平衡电网条件下,在非平衡栅格和永磁同步发电机(PMSG)上的全电网连接转换器的数学模型,分析了DC电压的双频振荡机制,以及电网有源功率纹波的影响 - 讨论了对双电流控制的阻抗。为了抑制DC电压的双频振荡,并考虑到有效电力的电网连接的阻抗,提出了一种基于分别取向正和负序电压的双电流控制策略,并引入了校正电网连接阻抗有源功率纹波的价值,以确定提出控制策略的校正参考电流。仿真结果表明,该控制策略可以有效地控制正序电流,消除直流电压双频振荡,并改善电流电流的谐波特性。

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